LM2594M-5.0 National Semiconductor, LM2594M-5.0 Datasheet - Page 13

IC, STEP-DOWN REGULATOR, 8-SOIC

LM2594M-5.0

Manufacturer Part Number
LM2594M-5.0
Description
IC, STEP-DOWN REGULATOR, 8-SOIC
Manufacturer
National Semiconductor
Datasheet

Specifications of LM2594M-5.0

Primary Input Voltage
12V
No. Of Outputs
1
Output Voltage
5V
Output Current
500mA
No. Of Pins
8
Operating Temperature Range
-40°C To +125°C
Supply Voltage Range
4.5V To 40V
Termination Type
SMD
Dc To Dc Converter Type
Inverting/Step Down
Number Of Outputs
1
Pin Count
8
Input Voltage
40V
Switching Freq
173kHz
Efficiency
82%
Package Type
SOIC N
Output Type
Fixed
Switching Regulator
Yes
Mounting
Surface Mount
Input Voltage (min)
4.5V
Operating Temp Range
-40C to 125C
Operating Temperature Classification
Automotive
Filter Terminals
SMD
Rohs Compliant
No
Input Voltage Primary Max
40V
Lead Free Status / RoHS Status
Contains lead / RoHS non-compliant
Lead Free Status / RoHS Status
Contains lead / RoHS non-compliant

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LM2594/LM2594HV Series Buck Regulator Design Procedure (Adjustable
Output)
4. Feedforward Capacitor (C
For output voltages greater than approximately 10V, an addi-
tional capacitor is required. The compensation capacitor is
typically between 50 pF and 10 nF, and is wired in parallel
with the output voltage setting resistor, R
tional stability for high output voltages, low input-output volt-
ages, and/or very low ESR output capacitors, such as solid
tantalum capacitors.
This capacitor type can be ceramic, plastic, silver mica, etc.
(Because of the unstable characteristics of ceramic capaci-
tors made with Z5U material, they are not recommended.)
5. Catch Diode Selection (D1)
A. The catch diode current rating must be at least 1.3 times
greater than the maximum load current. Also, if the power
supply design must withstand a continuous output short, the
diode should have a current rating equal to the maximum
current limit of the LM2594. The most stressful condition for
this diode is an overload or shorted output condition.
B. The reverse voltage rating of the diode should be at least
1.25 times the maximum input voltage.
C. This diode must be fast (short reverse recovery time) and
must be located close to the LM2594 using short leads and
short printed circuit traces. Because of their fast switching
speed and low forward voltage drop, Schottky diodes provide
the best performance and efficiency, and should be the first
choice, especially in low output voltage applications.
Ultra-fast recovery, or High-Efficiency rectifiers are also a
good choice, but some types with an abrupt turn-off charac-
teristic may cause instability or EMl problems. Ultra-fast re-
covery diodes typically have reverse recovery times of 50 ns
or less. Rectifiers such as the 1N4001 series are much too
slow and should not be used.
PROCEDURE (Adjustable Output Voltage Version)
(Continued)
FF
) (See Figure 1 )
2
. It provides addi-
13
4. Feedforward Capacitor (C
The table shown in Figure 3 contains feed forward capacitor
values for various output voltages. In this example, a 1 nF
capacitor is needed.
5. Catch Diode Selection (D1)
A. Refer to the table shown in Figure 11 . Schottky diodes
provide the best performance, and in this example a 1A, 40V,
1N5819 Schottky diode would be a good choice. The 1A di-
ode rating is more than adequate and will not be over-
stressed even for a shorted output.
EXAMPLE (Adjustable Output Voltage Version)
FF
)
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